首页> 美国卫生研究院文献>PLoS Clinical Trials >Transcriptomic Profiling of Differential Responses to Drought in Two Freshwater Mussel Species, the Giant Floater Pyganodon grandis and the Pondhorn Uniomerus tetralasmus
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Transcriptomic Profiling of Differential Responses to Drought in Two Freshwater Mussel Species, the Giant Floater Pyganodon grandis and the Pondhorn Uniomerus tetralasmus

机译:两种淡水贻贝物种,巨型浮游动物Pyganodon grandis和Pondhorn Uniomerus tetralasmus对干旱的差异响应的转录组分析。

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摘要

The southeastern US has experienced recurrent drought during recent decades. Increasing demand for water, as precipitation decreases, exacerbates stress on the aquatic biota of the Southeast: a global hotspot for freshwater mussel, crayfish, and fish diversity. Freshwater unionid mussels are ideal candidates to study linkages between ecophysiological and behavioral responses to drought. Previous work on co-occurring mussel species suggests a coupling of physiology and behavior along a gradient ranging from intolerant species such as Pyganodon grandis (giant floater) that track receding waters and rarely burrow in the substrates to tolerant species such as Uniomerus tetralasmus (pondhorn) that rarely track receding waters, but readily burrow into the drying sediments. We utilized a next-generation sequencing-based RNA-Seq approach to examine heat/desiccation-induced transcriptomic profiles of these two species in order to identify linkages between patterns of gene expression, physiology and behavior. Sequencing produced over 425 million 100 bp reads. Using the de novo assembly package Trinity, we assembled the short reads into 321,250 contigs from giant floater (average length 835 bp) and 385,735 contigs from pondhorn (average length 929 bp). BLAST-based annotation and gene expression analysis revealed 2,832 differentially expressed genes in giant floater and 2,758 differentially expressed genes in pondhorn. Trancriptomic responses included changes in molecular chaperones, oxidative stress profiles, cell cycling, energy metabolism, immunity, and cytoskeletal rearrangements. Comparative analyses between species indicated significantly higher induction of molecular chaperones and cytoskeletal elements in the intolerant P. grandis as well as important differences in genes regulating apoptosis and immunity.
机译:近几十年来,美国东南部经历了反复干旱。随着降水的减少,对水的需求不断增加,加剧了东南部水生生物的压力:淡水贻贝,小龙虾和鱼类多样性的全球热点。淡水水id贻贝是研究干旱的生态生理和行为响应之间联系的理想人选。先前关于共生贻贝物种的研究表明,生理学和行为学之间的耦合是沿着从不耐性物种(如巨人浮游生物)(巨人浮游生物)追踪渐进的水且很少在基质中挖洞的梯度到耐性物种(如Uniomerus tetralasmus(蓬角))之间的梯度。很少跟踪后退水域,但很容易钻入干燥的沉积物中。我们利用下一代基于测序的RNA-Seq方法来检查这两个物种的热/脱水诱导的转录组谱,以鉴定基因表达,生理学和行为模式之间的联系。测序产生了超过4.25亿个100 bp的读段。使用从头组装程序Trinity,我们将短读段组装成来自巨型浮子的321,250个重叠群(平均长度835 bp)和来自蓬恩霍恩的385,735个重叠群(平均长度929 bp)。基于BLAST的注释和基因表达分析揭示了巨型浮游生物中的2,832个差异表达基因和池塘喇叭中的2,758个差异表达基因。气管反应包括分子伴侣的变化,氧化应激曲线,细胞周期,能量代谢,免疫力和细胞骨架重排。物种之间的比较分析表明,在不耐症的P. grandis中分子伴侣和细胞骨架成分的诱导明显更高,并且在调节细胞凋亡和免疫力的基因上存在重要差异。

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